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Microstructural damage evaluation of ferritic-ausferritic spheroidal graphite cast iron

机译:铁素体-铁素体球墨铸铁的组织损伤评估

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The goal of this work is to improve the understanding of the relation between the microstructural characteristics of Intercritical Austempered Ductile Cast Iron (IADI) and the damage micromechanisms observed during its tensile loading. The experimental methodology involves heat treatments to obtain IADI and the assessment of the damage mechanisms (sequence and occurrence) during step by step tensile testing. The damage evaluation was carried out by observing the surface of the tensile test specimen with optical and scanning electron microscopy.The results show that small cracks start forming soon after the yield stress is surpassed. The crack initiation is preferentially located at matrix-nodule interface. As loading increases, cracks also develop at the ferritic grain boundaries and the ausferritic/ferritic interfaces. Consequently, at higher strain values, a competition between the plastic deformation on internodular zones and crack propagation along ausferritic phase is observed.Finally, the final fracture is produced by the propagation of cracks across the internodular ligaments and through the ausferritic/ferritic interface that later coalesce into a single dominant crack leading to the material failure.
机译:这项工作的目的是增进对临界奥氏体球墨铸铁(IADI)的显微组织特征与其在拉伸载荷过程中观察到的损伤微观机制之间关系的理解。实验方法涉及进行热处理以获得IADI并逐步评估拉伸过程中的破坏机理(顺序和发生)。通过光学和扫描电子显微镜观察拉伸试样的表面进行损伤评估,结果表明在超过屈服应力后不久便开始形成小裂纹。裂纹萌生优选位于基体-结节界面。随着载荷的增加,在铁素体晶界和奥氏体/铁素体界面处也会出现裂纹。因此,在较高的应变值下,观察到了结节区塑性变形与沿奥氏体相的裂纹扩展之间的竞争。最后,最终的裂纹是由裂纹跨结节韧带的扩展以及通过奥氏体/铁素体界面的扩展产生的合并为一个主要的裂纹,导致材料失效。

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